Silver-pohilg hellman algorithm implemented to discrete log with Arya Bhatta remainder theorem

dc.campusVisakhapatnam
dc.contributor.authorTalari, Surendra.
dc.contributor.authorSirisha, P.
dc.contributor.authorSateesh Kumar, D.
dc.contributor.authorSowmya, K. L.
dc.contributor.authorDivakara Rao, K.
dc.date.accessioned2023-07-19T06:55:57Z
dc.date.accessioned2025-03-31T10:09:39Z
dc.date.available2023-07-19T06:55:57Z
dc.date.issued2020
dc.description.abstractAs the internet provides access to millions of communications in every second around the world, security implications are tremendously increasing. Transfer of important files like banking transactions, tenders, and e commerce require special security and authenticated mechanism in its journey from the sender to the receiver. Public key Cryptosystem (PKC) is ever expanding in the history of cryptography. Traditional Public Key Infrastructure (PKI) certificates assure the authenticity in the form of digital signature. Public key cryptosystem having wide range of practical applications in wireless environments like smartcards, tokens and mobile phones. In this paper we solved discrete log problems with Silver Pohilg Hellman algorithm Implemented to Discrete Log with Aryabhatta Remainder Theorem, which improves the difficult of solving discrete log. So obviously it improves the security of public key crypto systems and avoids various attacks on it.
dc.identifier.uriDOI: 10.5373/JARDCS/V12I2/S20201354
dc.identifier.urihttps://dspacenew8-imu.refread.com/handle/123456789/2116
dc.language.isoen
dc.publisherJour of Adv Research in Dynamical & Control Systems
dc.schoolSchool of Naval Architecture and Ocean Engineering
dc.subjectDiscrete log
dc.subjectChinese reminder theorem
dc.subjectAryaBhatta Remainder Theorem (ART)
dc.subjectFinite field
dc.subjectSilver-Pohlig
dc.titleSilver-pohilg hellman algorithm implemented to discrete log with Arya Bhatta remainder theorem
dc.typeArticle

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